993 resultados para Maya chronology.


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Graphene oxide (GO), prepared by chemical oxidation of graphite, serves as a building block for developing polymeric nanocomposites. However, their application in electrical conductivity is limited by the fact that the oxygen sites on GO trap electrons and impede charge transport. Conducting nanocomposites can be developed by reducing GO. Various strategies have been adopted to either reduce GO ex situ, before the composite preparation, or in situ during the development of the nanocomposites. The current state of research on in situ reduction of GO during the preparation of conducting polymeric nanocomposites is discussed in this review. The mechanism and the efficiency of reduction is discussed with respect to various strategies employed during the preparation of the nanocomposite, the type of polymer used, and the processing conditions employed, etc. Its overall effect on the electrical conductivity of the nanocomposites is also discussed and the future outlook in this area is presented.

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In this work, porous membranes were designed by selectively etching the PEO phase, by water, from a melt-mixed PE/PEO blend. The pure water flux and the resistance across the membrane were systematically evaluated by employing an indigenously developed cross flow membrane setup. Both the phase morphology and the cross sectional morphology of the membranes was assessed by scanning electron microscopy and an attempt was made to correlate the observed morphology with the membrane performance. In order to design antibacterial membranes for water purification, partially reduced graphene oxide (rGO), silver nanoparticles (Ag) and silver nanoparticles decorated with rGO (rGO-Ag) were synthesized and incorporated directly into the blends during melt mixing. The loss of viability of bacterial cells was determined by the colony counting method using E. coli as a model bacterium. SEM images display that the direct contact with the rGO-Ag nanoparticles disrupts the cell membrane. In addition, the rGO-Ag nanoparticles exhibited a synergistic effect with respect to bacterial cell viability in comparison to both rGO and Ag nanoparticles. The possible mechanism associated with the antibacterial activity in the membranes was discussed. This study opens new avenues in designing antibacterial membranes for water purification.

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Various NixCo1-x alloys (with x varying from 0-60 wt%, Ni: nickel, Co: cobalt) were prepared by vacuum arc melting and mixed with polyvinylidene fluoride (PVDF) to design lightweight, flexible and corrosion resistant materials that can attenuate electromagnetic radiation. The saturation magnetization scaled with the fraction of Co in the alloy. Two key properties such as high-magnetic permeability and high-electrical conductivity were targeted. While the former was achieved using a Ni-Co alloy, multiwalled carbon nanotubes (CNTs) in the composites accomplished the latter. A unique approach was adopted to prepare the composites wherein PVDF powder along with CNTs and Ni-Co flakes were made into a paste, using a solvent, followed by hot pressing. Interestingly, CNTs facilitated in uniform dispersion of the Ni-Co alloy in PVDF, as manifested from synergistic improvement in the electrical conductivity. A significant improvement in the shielding effectiveness (41 dB, >99.99% attenuation) was achieved with the addition of 50 wt% of Ni40Co60 alloy and 3 wt% CNTs. Intriguingly, due to the unique processing technique adopted here, the flexibility of the composites was retained and more interestingly, the composites were resistant to corrosion as compared to only Ni-Co alloy.

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Poly(vinylidene fluoride) (PVDF) and poly(methyl methacrylate) (PMMA) are completely miscible below 50 wt % PVDF in the blends. In this work, an attempt was made to understand the fragility/cooperativity relation in glass-forming and crystalline blends of PVDF/PMMA and in the presence of a heteronucleating agent, multiwall carbon nanotubes (CNTs). Hence, three representative blends were chosen: a completely amorphous (10/90 by wt, PVDF/PMMA), on the verge of amorphous miscibility (50/50 by wt, PVDF/PMMA), and crystalline (60/40 by wt, PVDF/PMMA) blends. The intermolecular cooperativity/coupling, fragility, and configurational entropy near the glass transition temperature (T-g) were studied using differential scanning calorimetry (DSC) and broadband dielectric relaxation spectroscopy (DRS). It was observed that the blends with higher concentration of PMMA were more fragile (fragility index m = 141) and those with higher concentration of PVDF were more strong (m = 78). Interestingly, the coupling was less in the glass-forming blends (10/90 by wt, PVDF/PMMA) than the crystalline blends as manifested from DRS. This observation was also supported by DSC measurements which reflected that the cooperative rearranging region (CRR) existed over a smaller length scales in fragile blends as compared to strong blends, possibly due to restricted amorphous mobility. This effect was more prominent in the presence of CNTs, in particular for 50/50 (by wt) and 60/40 (by wt) PVDF/PMMA blends. Further, the configurational entropy, as manifested from DRS, decreased significantly in the strong blends in striking contrast to the fragile blends, supported by DSC, which manifested in an increase in the volume of cooperativity in the strong blends. The higher coupling in the crystalline blends can be attributed to good packing of the amorphous regions. While this is understood for crystalline blends (60/40 by wt, PVDF/PMMA), it is envisaged that enhanced dynamic heterogeneity is accountable for increased coupling in the case of blends which are on the verge of amorphous miscibility (50/50 by wt, PVDF/PMMA). The latter is also supported by broad relaxations near the T-g in DRS. Interestingly, the intermolecular coupling in the blends in the presence of CNTs has reduced, though the potential energy barrier hindering the rearrangement of CRR is lower than the blends without CNTs. In addition, the amorphous packing is not as effective as the blends without CNTs. This is manifested from reduced volume of cooperativity in particular, for 50/50 (by wt) and 60/40 (by wt) blends.

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The nature of interaction between a heteronucleating agent (graphene oxide, GO) and a strongly polar macromolecule (poly(ethylenimine), PEI) with poly(vinylidene fluoride) (PVDF) influencing the crystalline structure and morphology has been systematically investigated in this work. PEI interacts with PVDF via ion-dipole interaction, which helps in lowering the free energy barrier for nucleation thereby promoting faster crystallization. In contrast, besides interacting with PVDF, GO also promotes heteronucleation in PVDF. We observed that both GO and PEI have very different effects on the overall crystalline morphology of PVDF. For instance, the neat PVDF showed a mixture of both alpha and beta phases when cooled from the melt. However, incorporation of 0.1 wt % GO resulted in phase transformation from the stable alpha-phase to polar beta-polymorph in PVDF. In contrast, PEI, which also resulted in faster crystallization in PVDF predominantly, resulted in the stable alpha- phase. Various techniques like Fourier transform infrared spectroscopy, X-ray diffraction, and differential scanning calorimetry were employed to confirm the phase transformations in PVDF. PEI was further grafted onto GO nanosheets to understand the combined effects of both GO and PEI on the polymorphism in PVDF. The PVDF/PEI-GO composite showed a mixture of phases, predominantly rich in a. These phenomenal effects were further analyzed and corroborated with the specific interaction between GO and PEI with PVDF using X-ray photon scattering (XPS) and NMR. In addition, the dielectric permittivity increased significantly in the presence of GO and PEI in the composites. For instance, PVDF/PEI-GO showed the highest permittivity of 39 at 100 Hz.

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Optically Stimulated Luminescence (OSL) dating gives the age of most recent daylight exposure or heating of samples to >400 degrees C or the formation events of authigenic minerals. These correspond to the age of sedimentation and burial, ages of thermal events like contact heating by lava flows and heating during faulting and sand dyke formation, and the formation of a mineral via chemical precipitation. With the first observation of OSL in 1985, this method now occupies centre stage in Quaternary Geochronology. The use of OSL method for sediments from Himalaya began over three decades ago. The method has since provided chronology for a variety of events, such as past glaciation events, formation ages of river terraces, paleo-lacustrine deposits, landslides, floods, seismic events with substantive new insights into timing and style of geological processes. Theoretically, the dating range of method is present to a Million years, and this critically depends on two factors, viz, luminescence properties of mineral and their radiation environments. The general working range using quartz is 200ka, and using feldspars is up to Brunhes Matuyam Boundary. Extensions beyond this limit are currently being explored.

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In order to enhance the piezoelectric b-phase, PVDF was electrospun from DMF solution. The enhanced b-phase was discerned by comparing the electrospun fibers against the melt mixed samples. While both the processes resulted in phase transformation of a-to electroactive b-polymorph in PVDF, the fraction of b-phase was strongly dependent on the adopted process. Two different nanoscopic particles: carboxyl functionalized multiwall carbon nanotubes (CNTs) and silver (Ag) decorated CNTs were used to further enhance the piezoelectric coefficient in the electrospun fibers. Fourier transform infrared spectroscopy (FTIR) and wide-angle X-ray diffraction (XRD) supports the development of piezoelectric b-phase in PVDF. It was concluded that electrospinning was the best technique for inducing the b-polymorph in PVDF. This was attributed to the high voltage electrostatic field that generates extensional forces on the polymer chains that aligns the dipoles in one direction. The ferroelectric and piezoelectric measurement on electrospun fibers were studied using piezo-response force microscope (PFM). The Ag-CNTs filled PVDF electrospun fibers showed the highest piezoelectric coefficient (d(33) = 54 pm V-1) in contrast to PVDF/CNT fibers (35 pm V-1) and neat PVDF (30 pm V-1). This study demonstrates that the piezoelectric coefficient can be enhanced significantly by electrospinning PVDF containing Ag decorated nanoparticles.

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A unique strategy was adopted to achieve an ultra-low electrical percolation threshold of multiwall carbon nanotubes (MWNTs) (0.25 wt%) in a classical partially miscible blend of poly-alpha-methylstyrene-co-acrylonitrile and poly(methyl methacrylate) (P alpha MSAN/PMMA), with a lower critical solution temperature. The polymer blend nanocomposite was prepared by standard melt-mixing followed by annealing above the phase separation temperature. In a two-step mixing protocol, MWNTs were initially melt-mixed with a random PS-r-PMMA copolymer and subsequently diluted with 85/15 P alpha MSAN/PMMA blends in the next mixing step. Mediated by the PS-r-PMMA, the MWNTs were mostly localized at the interface and bridged the PMMA droplets. This strategy led to enhanced electromagnetic interference (EMI) shielding effectiveness at 0.25 wt% MWNTs through multiple scattering from MWNT-covered droplets, as compared to the blends without the copolymer, which were transparent to electromagnetic radiation.

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En cuatro diferentes localidades de Nicaragua se evaluaron siete genotipos de maíz (Zea mays L.): un híbrido (B-833), dos variedades de polinización libre (NB-6 y NB-12) y cuatro variedades criollas (Lucrecia, Maicena, Valenzuela y Colorado) en el ciclo de postrera del año 1992, con el objetivo de analizar las características agronómicas de cada uno de ellos, y comparar el rendimiento de los materiales criollos con respecto a los comerciales o mejorados y determinar su grado de estabilidad al sometérseles a distintas condiciones ambientales y de manejo, según el método de análisis de estabilidad modificado de Hildebrand & Poey. De acuerdo a los resultados se concluyó que el híbrido B-833 superó a todos los genotipos en estabilidad y la variedad criolla Valenzuela se ubicó por encima de las variedades NB-6 y NB-12. A pesar de que no todas las variedades criollas superaron a las comerciales, éstas poseen caracteres que pueden ser utilizados para el mejoramiento de los mismos y por ende aportar a la adaptación de éstos bajo condiciones ambientales específicas.

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Con el fin de determinar la influencia de diferentes métodos de control de malezas y rotaciones de cultivo sobre el crecimiento, desarrollo y rendimiento del maíz (Zea maya L.) var. NB-6, se realizó de Junio a Agosto de 1990 un experimento con un diseño de bloques completos al azar en parcelas divididas con 4 réplicas, en los predios del Instituto Nacional "Rigoberto López Pérez" de Managua; cuyos suelos pertenecen a la serie Nejapa (NI). Luego de finalizado el experimento, los resultados demostraron que los diferentes métodos de control de malezas y cultivos antecedentes no presentaron diferencias significativas, sobre la mayor parte de las variables en estudio; no obstante se encontró que el cultivo antecedente SOYA y el control de malezas LIMPIA PERIODICA produjeron efecto significativo en algunas de las variables del crecimiento y rendimiento (altura de planta, diámetro, número de hojas, número de granos por hilera y longitud de mazorca) del maíz.

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Resumen: El presente trabajo pretende ser una introducción al pensamiento de la India. Comienza considerando el desarrollo de la Indología, en sus distintas etapas y corrientes metodológicas, e incluye una precisión sobre estos estudios en la Argentina. Luego de centrarse en la perspectiva hermenéutica, se detallan las épocas de la tradición clásica de la India y las características básicas de su espiritualidad. La autora se adentra a continuación en cuatro nociones que pueden comprenderse como portales de acceso al mundo Indio: mâyâ, karma, yoga y moksha. A la luz de estas nociones tan específicas, la conclusión plantea el diálogo entre disciplinas y culturas como vía para comprender la profunda interdependencia del mundo.

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Las frutas deshidratadas son una opción a la problemática de pérdidas de cosechas debido a la falta de valor agregado en la producción frutícola nicaragüense, teniendo como ventaja competitiva que este producto tiene mayor vida de anaquel, se conserva manteniendo su valor nutritivo y disponibilidad de la fruta durante todo el año. Basados en la problemática planteada anteriormente la cooperativa La casa Agropecuaria R.L, ha identificado una oportunidad de negocio. Por este motivo se realizó el presente estudio, que consiste en identificar las oportunidades y limitaciones en el comercio. Para el estudio se utilizaron las técnicas de encuesta y de observación por medio de instrumentos básicos de cuestionarios, para su posterior recolección de datos, que brindaron la información primaria. En el municipio de Managua se analizó la oferta, demanda y precios de la fruta deshidratada, Se encontró que existe una demanda insatisfecha del 38% de frutas deshidratadas para el año 2016, los consumidores prefieren adquirir este producto en supermercados, al estudiar el rango de edades y actividad económica se identificó que el 40% son estudiantes. En cuanto a gustos se encontró la piña como preferencia de consumo con un 65% y como principal competidor nacional se encuentra los productos Maya mientras que en el enfoque internacional se analizó los principales países socios comerciales de Nicaragua la mayor demanda se da en la Unión Europea representando el 98% de exportaciones, observando que el coco presento mayor volumen de exportación pero tiene el precio más bajo mientras el plátano seco es el producto mejor pagado con una tasa de crecimiento en el precio del 11% anual. En los resultados obtenidos se determinó que si es viable comercializar frutas deshidratadas en el municipio de Managua y en el mercado internacional.

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[EN] Data contained in this record come from the following accademic activity (from which it is possible to locate additional records related with the Monastery):

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A Lei nº 11.340/2006 - Lei Maria da Penha é resultado recente das lutas históricas do movimento feminista no Brasil. Este estudo, preliminarmente, analisa as conquistas constitucionais femininas, as leis de gênero brasileiras e os tratados internacionais ratificados pelo Brasil. Relata a cronologia do nascimento da norma, desde os fatos precedentes à sua confecção, como também a iniciativa do projeto de lei, a principal discussão realizada pela Câmara dos Deputados, por meio do Seminário Violência contra a Mulher: Um Ponto Final, os aspectos concernentes à tramitação, aprovação e a discriminação das principais propostas de alteração em tramitação no Congresso Nacional. Em que pese grande repercussão da lei em nível nacional, muitos são os problemas detectados acerca de sua aplicabilidade, gerando desafios a serem vencidos.